A clinical development paradigm for cancer vaccines and related biologics

Axel Hoos1, Giorgio Parmiani, Kristen Hege

  • 1Bristol-Myers Squibb, Global Clinical Research, Oncology, Wallingford, CT 06492, USA. axel.hoos@bms.com

Insights

A new two-phase clinical trial paradigm is proposed for therapeutic cancer vaccines, moving beyond cytotoxic agent standards. This approach enhances vaccine development by focusing on biologic activity and immune responses for earlier decision-making.

Area of Science:

  • Oncology
  • Immunology
  • Biotechnology

Background:

  • Therapeutic cancer vaccines are complex biologics with unique characteristics distinct from cytotoxic agents.
  • Current oncology drug development paradigms are ill-suited for cancer vaccines, necessitating tailored guidelines.
  • A consensus process involving academia, industry, and regulatory bodies identified the need for a new development framework.

Purpose of the Study:

  • To define a novel, flexible clinical development paradigm for therapeutic cancer vaccines.
  • To address key aspects including trial end points, designs, statistical methods, technical challenges, and combination therapies.
  • To facilitate earlier and more informed decision-making in cancer vaccine development.

Main Methods:

  • A consensus process over one year involving diverse stakeholders (academia, industry, FDA).
  • Defined two primary trial types: proof-of-principle and efficacy trials.
  • Proposed specific criteria for patient populations, objectives, and end points for each trial type.

Main Results:

  • Proof-of-principle trials should assess safety, dose, schedule, and biologic activity (immune/molecular markers) in at least 20 patients.
  • Biologic activity requires reproducible immune response in two assays at two time points.
  • Efficacy trials should formally establish clinical benefit, encouraging randomized designs and adaptive elements.

Conclusions:

  • The proposed two-phase paradigm (proof-of-principle and efficacy trials) offers a more flexible and expeditious development pathway for cancer vaccines.
  • This framework supports early assessment of vaccine potential based on credible data, enabling informed go/no-go decisions.
  • The paradigm addresses critical challenges in cancer vaccine development, including combination therapies.

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